US7698913B2ActiveUtilityA1

Complex lock assembly

Assignee: ABA UFO INT CORPPriority: Nov 28, 2006Filed: Nov 28, 2006Granted: Apr 20, 2010
Est. expiryNov 28, 2026(~0.3 yrs left)· nominal 20-yr term from priority
Inventors:Miko Lee
Y10T70/415E05B 37/025Y10T70/40Y10T70/7147Y10T70/7141E05B 37/0058E05B 37/0034
86
PatentIndex Score
16
Cited by
11
References
10
Claims

Abstract

The complex lock has a housing, a number core, a key cylinder and a number detector. The number core, the key cylinder and the number detector are located inside of the housing. The complex lock can be unlock by a key and unlock number. When the unlock numbers are missed or forgotten, the number detector is able to find the unlock number again so that the complex lock can be unlock by the unlock number again.

Claims

exact text as granted — not AI-modified
1. A complex lock comprising
 a housing having multiple checking holes formed through the housing and corresponding to a number core, said number core mounted inside the housing; 
 a key cylinder mounted inside the housing adjacent to the number core; 
 a lower pushing seat mounted inside the housing and connected to the key cylinder; 
 an upper pushing seat slidably mounted inside the housing, connected to the lower pushing seat and having
 a driving end; 
 a side wall; 
 a holding end; and 
 a locking hole formed in the holding end of the upper pushing seat; 
 
 a bolt having
 a connecting end connected to the number core; and 
 a locking end extending out of the housing and selectively engaging to the locking hole of the upper pushing seat; and 
 
 a number detector slidably mounted in the housing, connected to the lower pushing seat and having
 a key cylinder side; 
 a number core side; 
 multiple forks formed on the number core side of the number detector and extending toward the number core and having ends and holes formed through the ends of the forks. 
 
 
   
   
     2. The complex lock as claimed in  claim 1 , wherein the key cylinder has a shell, a rotating rod, multiple pins, multiple pin springs and a first pin seat;
 the shell has
 a rotating hole formed through the shell; 
 a stationary hole formed through the shell and communicating with the rotating hole of the shell; and 
 a pin bore formed through the shell, corresponding to the stationary hole of the shell and communicating with the rotating hole of the shell; 
 
 the rotating rod has
 a held end extending into and held in the rotating hole of the shell; and 
 a second pin seat formed on the held end of the rotating rod, held inside the rotating hole of the shell and having
 multiple second pin holes form through the second pin seat; 
 
 
 the first pin seat is mounted inside of the shell and has
 a through hole formed through the first pin seat to allow the rotating end of the rotating rod to extend through the through hole; 
 a pin bore formed in the first pin seat and corresponding to the pin bore in the shell; 
 a pin mounted into the pin bores of the shell and the first pin seat to fasten the first pin seat in the shell; and 
 multiple first pin holes formed in the first pin seat and corresponding respectively to the second pin holes of the second pin seat; 
 
 the pins and the pin springs are slidably mounted inside the second pin holes of the second pin seat and the first pin holes of the first pin seat; 
 the lower pushing seat has
 a side; 
 a keyed hole formed through the lower pushing seat and allowing the rotating end of the rotating rod to extend through; and 
 lower guiding walls formed on the lower pushing seat and corresponding to each other and each lower guiding wall being curved and having
 an inclined edge; 
 
 
 the upper pushing seat has
 a rod hole formed in the driving end of the upper pushing seat to allow the rotating end of the rotating rod to extend through the keyed hole and having
 an inner surface; and 
 a limiting protrusion formed on the inner surface of the rod hole and selectively abutting with the rotating end of the rotating rod; and 
 
 upper guiding edges formed on the upper pushing seat, corresponding to each other and abutting with the inclined edges of the lower guiding walls on the lower pushing seat; and 
 a spring mounted around the holding end of the upper pushing seat. 
 
 
   
   
     3. The complex lock as claimed in  claim 2 , wherein the number core has multiples number rings and multiples inner sleeves;
 each number ring having
 a central hole formed through the number ring and having
 an inner edge; and 
 multiple concave teeth formed on the inner edge of the central hole of the number ring; and 
 
 
 each inner sleeve mounted inside of the central hole and having
 a smooth end; 
 a toothed end; 
 multiple capping teeth formed on the toothed end of the inner sleeve and selectively engaged the concave teeth of the number ring; 
 multiple guiding teeth formed on the toothed end of the inner sleeve; 
 a positioning recess formed in the end of the inner sleeve between the capping teeth; and 
 a through hole formed through inner sleeve to allow the end of the bolt to extend through the through hole; 
 
 the bolt has an annular recess, a washer, multiple upper teeth and multiple lower teeth;
 the annular recess formed on the end of the bolt; 
 the washer mounted on the annular recess of the bolt to hold the inner sleeves on the bolt; 
 the upper protrusions formed between the locking end the end of the bolt; and 
 the lower protrusions formed between the locking end and the end of the bolt and abutting with an uppermost one of the inner sleeves of the number core. 
 
 
   
   
     4. The complex lock as claimed in  claim 3 , wherein the inner sleeves have guiding teeth formed on the toothed ends of the inner sleeves;
 the upper pushing seat has tracking protrusions formed on the side wall of the upper pushing seat and corresponding to each other; 
 the housing is composed of a cover and a base, wherein
 the cover has
 an inner face; 
 a half key cylinder recess formed in the inner face of the cover;
 a half number core recess formed in the inner face of the cover adjacent to the half key cylinder recess of the cover and having a bottom; and 
 
 multiple cutouts formed through the bottom of the half number core recess to allow the number rings of the number core to extend out; and 
 
 the base has
 an inner face; 
 a half key cylinder recess formed in the inner face of the base and having
 a bottom; and 
 a tracking recess formed in the bottom of the half key cylinder recess of the base and receiving one of the tracking ribs of the upper pushing seat; 
 
 a half number core recess formed in the innerface of the base adjacent to the half key cylinder recess of the half and having
 a bottom; and 
 multiple cutouts formed through the bottom of the half number core recess to allow the number rings of the number core to extend out; 
 
 multiple protrusions formed on the bottom of the half number core recess of the base between the cutouts of the base and selectively engaging the capping teeth of the inner sleeves of the number core; 
 a rod formed on the inner face of the base between the half key cylinder recess, the half number core recess of the base and extending into the stationary hole of the shell to hold the key cylinder inside the housing; 
 a stationary bracket recess formed in the inner face of the base between the half key cylinder recess and the half number core recess of the base and having
 a stationary bracket mounted in the stationary bracket recess and having 
  multiple fingers formed on the stationary bracket and extending into the half number core recess of the base and touching the number rings of the number core; and 
 
 a number detector recess formed on the inner face of the base between the half key cylinder recess and the half number core recess of the base to mount the number detector inside; 
 
 
 wherein, the half key cylinder recess of the cover and the half cylinder of the base are combined into a key cylinder recess that receives the key cylinder; 
 the half number core recess of the cover and the half number core recess of the base are combined into a number recess that receives the number core. 
 
   
   
     5. The complex lock as claimed in  claim 4 , wherein the lower pushing seat has a pushing recess formed on the side of the lower pushing seat;
 the number detector has a key cylinder side, a number core side, an extension formed on the key cylinder side of number detector and extending into the key cylinder recess of the base and selectively engaging the pushing recess of the lower pushing seat, forks formed on the number core side of number detector and extending into the number core recess of the base and having ends and holes formed through the ends of the forks, a recess formed on the number core side of number detector, and a spring connected to the recess of the number detector. 
 
   
   
     6. A complex lock comprising
 a housing having
 checking holes formed through the housing; 
 
 a number core mounted inside of the housing and corresponding to the checking holes of the housing; 
 a key cylinder mounted inside of the housing next to the number core; 
 a lower pushing seat mounted inside of the housing and connected to the key cylinder; 
 an upper pushing seat slidably mounted inside of the housing and connected to the lower pushing seat and having
 a driving end; 
 a side wall; 
 a holding end; and 
 a locking hole formed in the holding end of the upper pushing seat; 
 
 a bolt having
 a connecting end connected to the number core; 
 a locking end extending out of the housing and selectively engaging to the locking slot of the upper pushing seat; 
 
 a number detector slidably mounted inside of the housing and between the number core and lower pushing seat, the number detector connected to the lower pushing seat and having
 a key cylinder side; 
 a number core side; and 
 forks formed on the number core side of number detector and extending into the number core recess of the halve and having
 ends; and 
 holes formed through the ends of the forks. 
 
 
 
   
   
     7. The complex lock as claimed in  claim 6 , wherein the key cylinder has a shell, a rotating rod, multiple pins, multiple pin springs and a first pin seat;
 the shell has
 a rotating hole formed through the shell; 
 a stationary hole formed through the shell and communicating with the rotating hole of the shell; and 
 a pin bore formed through the shell, corresponding to the stationary hole of the shell and communicating with the rotating hole of the shell; 
 
 the rotating rod has
 a held end extending into and held in the rotating hole of the shell; and 
 a second pin seat formed on the held end of the rotating rod, held inside the rotating hole of the shell and having
 multiple second pin holes form through the second pin seat; 
 
 
 the first pin seat is mounted inside of the shell and has
 a through hole formed through the first pin seat to allow the rotating end of the rotating rod to extend through the through hole; 
 a pin bore formed in the first pin seat and corresponding to the pin bore in the shell; 
 a pin mounted into the pin bores of the shell and the first pin seat to fasten the first pin seat in the shell; and 
 multiple first pin holes formed in the first pin seat and corresponding respectively to the second pin holes of the second pin seat; 
 
 the pins and the pin springs are slidably mounted inside the second pin holes of the second pin seat and the first pin holes of the first pin seat; 
 the lower pushing seat has
 a side; 
 a keyed hole formed through the lower pushing seat and allowing the rotating end of the rotating rod to extend through; and 
 lower guiding walls formed on the lower pushing seat and corresponding to each other and each lower guiding wall being curved and having
 an inclined edge; 
 
 
 the upper pushing seat has
 a rod hole formed in the driving end of the upper pushing seat to allow the rotating end of the rotating rod to extend through the keyed hole and having
 an inner surface; and 
 a limiting protrusion formed on the inner surface of the rod hole and selectively abutting with the rotating end of the rotating rod; and 
 
 upper guiding edges formed on the upper pushing seat, corresponding to each other and abutting with the inclined edges of the lower guiding walls on the lower pushing seat; and 
 a spring mounted around the holding end of the upper pushing seat. 
 
 
   
   
     8. The complex lock as claimed in  claim 7 , wherein the number core has multiples number rings and multiples inner sleeves;
 each number ring having
 a central hole formed through the number ring and having
 an inner edge; and 
 multiple concave teeth formed on the inner edge of the central hole of the number ring; and 
 
 
 each inner sleeve mounted inside of the central hole and having
 a smooth end; 
 a toothed end; 
 multiple capping teeth formed on the toothed end of the inner sleeve and selectively engaged the concave teeth of the number ring; 
 multiple guiding teeth formed on the toothed end of the inner sleeve; 
 a positioning recess formed in the end of the inner sleeve between the capping teeth; and 
 a through hole formed through inner sleeve to allow the end of the bolt to extend through the through hole; 
 
 the bolt has an annular recess, a washer, multiple upper teeth and multiple lower teeth;
 the annular recess formed on the end of the bolt; 
 the washer mounted on the annular recess of the bolt to hold the inner sleeves on the bolt; 
 the upper protrusions formed between the locking end the end of the bolt; and 
 the lower protrusions formed between the locking end and the end of the bolt and abutting with an uppermost one of the inner sleeves of the number core. 
 
 
   
   
     9. The complex lock as claimed in  claim 8  wherein the inner sleeves have guiding teeth formed on the toothed ends of the inner sleeves;
 the upper pushing seat has tracking protrusions formed on the side wall of the upper pushing seat and corresponding to each other; 
 the housing is composed of a cover and a base, wherein
 the cover has
 an inner face; 
 a half key cylinder recess formed in the inner face of the cover; 
 a half number core recess formed in the inner face of the cover adjacent to the half key cylinder recess of the cover and having
 a bottom; and 
 multiple cutouts formed through the bottom of the half number core recess to allow the number rings of the number core to extend out; and 
 
 
 the base has
 an inner face; 
 a half key cylinder recess formed in the inner face of the base and having
 a bottom; and 
 a tracking recess formed in the bottom of the half key cylinder recess of the base and receiving one of the tracking ribs of the upper pushing seat; 
 
 a half number core recess formed in the inner face of the base adjacent to the half key cylinder recess of the base and having
 a bottom; and 
 multiple cutouts formed through the bottom of the half number core recess to allow the number rings of the number core to extend out; 
 
 multiple protrusions formed on the bottom of the half number core recess of the base between the cutouts of the base and selectively engaging the capping teeth of the inner sleeves of the number core; 
 a rod formed on the inner face of the base between the half key cylinder recess, the half number core recess of the base and extending into the stationary hole of the shell to hold the key cylinder inside the housing; 
 a stationary bracket recess formed in the inner face of the base between the half key cylinder recess and the half number core recess of the base and having
 a stationary bracket mounted in the stationary bracket recess and having 
  multiple fingers formed on the stationary bracket and extending into the half number core recess of the base and touching the number rings of the number core; and 
 
 a number detector recess formed on the inner face of the base between the half key cylinder recess and the half number core recess of the base to mount the number detector inside; 
 
 
 wherein, the half key cylinder recess of the cover and the half cylinder of the base are combined into a key cylinder recess that receives the key cylinder; 
 the half number core recess of the cover and the half number core recess of the base are combined into a number recess that receives the number core. 
 
   
   
     10. The complex lock as claimed in  claim 9 , wherein the lower pushing seat has a pushing recess formed on the side of the lower pushing seat;
 the number detector has a extension formed on the key cylinder side of number detector and extending into the key cylinder recess and selectively engaging to the pushing recess of the lower pushing seat and a spring connected to at the recess of the number detector.

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